Rolling circle amplification/transcription-based nanotechnology for efficient delivery of nucleic acid drugs

Abstract

Rolling circle amplification/transcription (RCA/RCT) nanotechnology offers a breakthrough platform for nucleic acid drug delivery, leveraging enzymatically produced ultra-long, programmable nucleic acid chains to engineer multifunctional nanostructures. In this review, we give an overview of RCA/RCT-based nanocarriers for nucleic acid drug delivery, systematically summarizing their key design aspects: (1) nanoization strategies through biomineralization, electrostatic compression, nanomaterial-assisted assembly and base pairing/entanglement; (2) drug loading approaches via design on template, complementary base pairing and electrostatic binding; (3) targeting modalities including aptamers, proteins, polymers and small molecule ligands; and (4) controlled release mechanisms responsive to endogenous/exogenous enzymes and intracellular microenvironments. We showcase their significant therapeutic advances in gene therapy, immunotherapy, and combination therapy. This overview provides critical insights for developing next-generation RCA/RCT delivery platforms to address pressing biomedical needs.

Graphical abstract: Rolling circle amplification/transcription-based nanotechnology for efficient delivery of nucleic acid drugs

Article information

Article type
Review Article
Submitted
23 মে 2025
Accepted
07 জুলাই 2025
First published
08 জুলাই 2025

Nanoscale Horiz., 2025, Advance Article

Rolling circle amplification/transcription-based nanotechnology for efficient delivery of nucleic acid drugs

X. You, Q. Zeng, T. Xia, X. Guo, C. Yao and D. Yang, Nanoscale Horiz., 2025, Advance Article , DOI: 10.1039/D5NH00364D

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